Preliminary exploration on the construction of GIS basic data platform for CO2 geological storage

The construction of CO2 geological storage GIS (Geographic Information System) basic data platform is an important basis for deploying the CCUS (Carbon Capture, Utilization and Storage) full-chain demonstration project. By studying typical carbon storage data platforms at home and abroad, the charac...

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Main Authors: Jie SUN, Kang LIU, Kelong TAN, Zhongyue LIN, Shuxun SANG, Han XU, Zhe JIANG, Sijie HAN, Zhuo ZOU
Format: Article
Language:zho
Published: Editorial Office of Journal of China Coal Society 2023-07-01
Series:Meitan xuebao
Subjects:
Online Access:http://www.mtxb.com.cn/article/doi/10.13225/j.cnki.jccs.CN23.0259
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author Jie SUN
Kang LIU
Kelong TAN
Zhongyue LIN
Shuxun SANG
Han XU
Zhe JIANG
Sijie HAN
Zhuo ZOU
author_facet Jie SUN
Kang LIU
Kelong TAN
Zhongyue LIN
Shuxun SANG
Han XU
Zhe JIANG
Sijie HAN
Zhuo ZOU
author_sort Jie SUN
collection DOAJ
description The construction of CO2 geological storage GIS (Geographic Information System) basic data platform is an important basis for deploying the CCUS (Carbon Capture, Utilization and Storage) full-chain demonstration project. By studying typical carbon storage data platforms at home and abroad, the characteristics of carbon storage data are analyzed: multi-source, multi-scale, and multi-type. There are several areas that need to be further investigated: the platform function is basically a data storage management display, and a further enhancement of model embedding and dynamic analysis is needed. Research on the synergy between CO2 storage and energy resources needs to be further strengthened. On this basis, the basic data management and processing platform architecture of CO2 geological storage GIS is preliminarily designed based on the data of Map GIS spatial database and SQL Server attribute database, and the system is constructed by using the Microsoft. Net Frame development framework and the Web GIS technology. The core logical structure of the system is divided into four layers, namely, resource data layer, technical support layer, business application layer, and user permission layer. There are three peripheral support systems including the security system, management support system and standard specification system. The key technologies of data platform construction include the multi-heterogeneous data fusion of carbon sequestration geological GIS data and three models, i.e., secondary development and import of sequestration capacity evaluation model, source and sink matching dynamic model, and energy and resource collaboration model. Four interfaces are preliminarily designed including the data platform home page interface, thematic maps and results output interface, basin-level results map interface, storage potential - source and sink matching - energy and resources collaborative data analysis interface. The construction of the CO2 geological storage GIS basic data management and processing platform will provide a scientific basis for the selection of carbon reduction and decarburization solutions at the source, the selection of geological storage sites for CCUS regional large-scale deployment and the implementation of CCUS large-scale demonstration projects.
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spelling doaj.art-61b7f135dd314cedbeb9d6a54f5cfbb42023-08-02T06:33:53ZzhoEditorial Office of Journal of China Coal SocietyMeitan xuebao0253-99932023-07-014872936294810.13225/j.cnki.jccs.CN23.0259CN23-0259Preliminary exploration on the construction of GIS basic data platform for CO2 geological storageJie SUN0Kang LIU1Kelong TAN2Zhongyue LIN3Shuxun SANG4Han XU5Zhe JIANG6Sijie HAN7Zhuo ZOU8College of Geology and Environment, Xi’an University of Science and Technology, Xi’an 710054, ChinaExploration and Research Institute, China National Administration of Coal Geology, Beijing 100039, ChinaChina Chemical Geology and Mine Bureau, Beijing 100028, ChinaCarbon Neutralization Research Institute, China National Administration of Coal Geology, Beijing 100038, ChinaCarbon Neutrality Institute, China University of Mining and Technology, Xuzhou 221008, ChinaExploration and Research Institute, China National Administration of Coal Geology, Beijing 100039, ChinaCarbon Neutralization Research Institute, China National Administration of Coal Geology, Beijing 100038, ChinaCarbon Neutrality Institute, China University of Mining and Technology, Xuzhou 221008, ChinaExploration and Research Institute, China National Administration of Coal Geology, Beijing 100039, ChinaThe construction of CO2 geological storage GIS (Geographic Information System) basic data platform is an important basis for deploying the CCUS (Carbon Capture, Utilization and Storage) full-chain demonstration project. By studying typical carbon storage data platforms at home and abroad, the characteristics of carbon storage data are analyzed: multi-source, multi-scale, and multi-type. There are several areas that need to be further investigated: the platform function is basically a data storage management display, and a further enhancement of model embedding and dynamic analysis is needed. Research on the synergy between CO2 storage and energy resources needs to be further strengthened. On this basis, the basic data management and processing platform architecture of CO2 geological storage GIS is preliminarily designed based on the data of Map GIS spatial database and SQL Server attribute database, and the system is constructed by using the Microsoft. Net Frame development framework and the Web GIS technology. The core logical structure of the system is divided into four layers, namely, resource data layer, technical support layer, business application layer, and user permission layer. There are three peripheral support systems including the security system, management support system and standard specification system. The key technologies of data platform construction include the multi-heterogeneous data fusion of carbon sequestration geological GIS data and three models, i.e., secondary development and import of sequestration capacity evaluation model, source and sink matching dynamic model, and energy and resource collaboration model. Four interfaces are preliminarily designed including the data platform home page interface, thematic maps and results output interface, basin-level results map interface, storage potential - source and sink matching - energy and resources collaborative data analysis interface. The construction of the CO2 geological storage GIS basic data management and processing platform will provide a scientific basis for the selection of carbon reduction and decarburization solutions at the source, the selection of geological storage sites for CCUS regional large-scale deployment and the implementation of CCUS large-scale demonstration projects.http://www.mtxb.com.cn/article/doi/10.13225/j.cnki.jccs.CN23.0259co2 geological storagegis platformsecondary developmentmodel embedding
spellingShingle Jie SUN
Kang LIU
Kelong TAN
Zhongyue LIN
Shuxun SANG
Han XU
Zhe JIANG
Sijie HAN
Zhuo ZOU
Preliminary exploration on the construction of GIS basic data platform for CO2 geological storage
Meitan xuebao
co2 geological storage
gis platform
secondary development
model embedding
title Preliminary exploration on the construction of GIS basic data platform for CO2 geological storage
title_full Preliminary exploration on the construction of GIS basic data platform for CO2 geological storage
title_fullStr Preliminary exploration on the construction of GIS basic data platform for CO2 geological storage
title_full_unstemmed Preliminary exploration on the construction of GIS basic data platform for CO2 geological storage
title_short Preliminary exploration on the construction of GIS basic data platform for CO2 geological storage
title_sort preliminary exploration on the construction of gis basic data platform for co2 geological storage
topic co2 geological storage
gis platform
secondary development
model embedding
url http://www.mtxb.com.cn/article/doi/10.13225/j.cnki.jccs.CN23.0259
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